Abstract:
A wireless terminal displays its location and a map segment on a display of the wireless terminal. Operation commences with the wireless terminal accessing its GPS receiver to determine its location coordinates. Based upon its location coordinates, the wireless terminal accesses a map segment. The wireless terminal determines its orientation with respect to a reference direction. The wireless terminal displays the map segment on its display such that the map segment is displayed in a correct orientation with respect to mapped physical features. The wireless terminal displays an icon on its display that represents the wireless terminal. The icon is displayed on the map segment at a location corresponding to the location coordinates of the wireless terminal. The display of the wireless terminal orients the mapped physical features on the display so that they are oriented correctly with respect to the actual physical features.
Abstract:
A “seeking” wireless terminal determines its location coordinates via access of its GPS receiver. The seeking wireless terminal then sends a seeking request via a supporting wireless network infrastructure. The seeking request includes at least one interest item entered by a user of the seeking wireless terminal and also the location coordinates of the seeking wireless terminal. The location coordinates may include an elevation of the wireless terminal. The seeking wireless terminal receives a seeking response via the supporting wireless network infrastructure that includes location coordinates of a “sought” wireless terminal. The seeking wireless terminal accesses a map segment corresponding to the location coordinates of the seeking wireless terminal and to the location coordinates of the sought wireless terminal. Then, the seeking wireless terminal displays the map segment, an icon that represents the seeking wireless terminal, and an icon that represents the sought wireless terminal.
Abstract:
Systems and methods that reformat media are described. In one embodiment, a system may include, for example, a server, a first communications device and a second communications device. The server, the first communications device and the second communications device may be operatively coupled to a network. The second communications device may receive, from the first communications device, a device profile relating to the first communications device and may send the device profile and media content to the server. The server may reformat the media content based on the device profile.
Abstract:
In a communication infrastructure, an intermediate node supports delivery of packets from source devices to destination devices if the source device contains no notorious content (e.g., malware or illegal content, services or distribution). The intermediate node, e.g., a switch, router, access point, bridge or gateway, contains a plurality of predefined templates and corresponding quarantine service functions. By comparing packets received with the plurality of predefined templates and associated logic, the intermediate node identifies notorious source devices such as a notorious server and notorious content. Templates target at least a portion of one or more of a domain name, IP address or URL, for example. Once identified, local and/or remote quarantine service functionality attempts to neutralize, warn, remove and/or block the notorious content at both the source and destination devices. Warnings may include human challenges to prevent malware override.
Abstract:
A wireless access point and multiple wireless terminals exchange utilization, status, mobility and reception characteristics. Each wireless terminal generates reception characteristics based on transmissions received from the wireless access point and from other devices in the network. In one operating mode, the characteristics gathered by the wireless devices are forwarded to the wireless access point, and, based on all received characteristics, the wireless access point selects its own transmission power for different types of the transmission. In another mode, all characteristics are exchanged between every wireless terminal and the access point so that each can independently or cooperatively make transmission power control decisions. In a further mode, the wireless access point adjusts protocol parameters based on an assessment of the characteristics received from the client devices, to detect an event such as a hidden terminal condition. The utilization, status, mobility, and reception characteristics include received signal strength, error rates, estimated battery life, availability of unlimited power, active versus sleep mode ratios, anticipated bandwidth utilization, coding schemes available, deterministic/non-deterministic requirements, encryption and security requirements, quality of service requirements, position, velocity, stationary status, etc. Gathering of such characteristics involves both retrieval of preset parameters from memory and generating parameters based on received transmissions (including test packets).
Abstract:
An auxiliary bridging device operates within infrastructure that includes a packet data network (Internet) and the Public Switched Telephone Network (PSTN) telephony network and supports a coupled POTS telephony device. The auxiliary bridging device is operable to bridge calls between every two of the POTS telephony device, the PSTN network, and the packet data network (Internet). The auxiliary bridging device selectively bridges incoming calls to the POTS telephony device, to remote PSTN terminals, and to remote VoIP terminals based upon telephony bridging instructions. These telephony bridging instructions may be stored locally or remotely.
Abstract:
A system and method for providing quality-of-service based network resource allocation and utilization in a dynamic network environment. For example, a wireless communication network may comprise a first system and a second system. The first system may provide a current service to a user at a current quality level. The first system and second system may establish a wireless communication link. At least one of the first and second systems may determine whether utilizing one or more resources of the second system will provide the current service to the user at a higher level of quality than the current quality level. One or more resources of the second system may be allocated for providing the current service to a user at a higher quality level. The allocated resources may be utilized to provide the current service to the user at a higher quality level than the current quality level.
Abstract:
A system and method is described which utilizes a dual function reader device, which may be a hand-held inventory control device, which first performs an optical read of an optical bar code on a carrier unit, then based on the identification or other information obtained from the optical read a RF read is made of a RF tag attached to, or within, the carrier unit. An indicator light on the carrier unit illuminates when the optical read is completed, which allows an operator to visually verify that the optical read has transpired for the desired carrier unit. The RF tag provides data regarding the inventory of the goods stored within, or on, the carrier unit, the temperature of the goods, the shelf-life of the goods, the source and/or destination of the carrier unit and/or the goods, or other information. Data can also be written to the RF tag by the reader.
Abstract:
Systems and methods that provide remote access are described. In one embodiment, a system may include, for example, a plurality of communication devices and a media device. The plurality of communication devices may be operatively coupled to a network and may include, for example, a native communication device. The media device may be operatively coupled to the native communication device and the network. The media device may be associated with the native communication device and the network and may be capable of exchanging media content with the plurality of communication devices and the network. A profile of the media device may be stored in at least one of the media device and the native communication device. The profile may include, for example, information related to managing the media content when the media device is roaming.
Abstract:
A transcription network having linked computer terminals for a court reporter and for examining, defending, and associate attorneys is disclosed. Based on the hardware present, the court reporter terminal automatically selects the most appropriate synchronization and audio and video transcript delivery schemes for the other terminals. A multi-mode synchronization scheme provides for various levels of synchronization of the textual transcript with the audio and video transcripts of the proceeding. A first-in first-out arrangement is provided for controlling the video and audio storage space so that a window of available audio and video can be specifically marked and retrieved for post-proceeding review.